N.M. Admin. Code § 19.8.10.1006 - SURFACE COAL MINING AND RECLAMATION OPERATIONS ON AREAS OR ADJACENT TO AREAS INCLUDING ALLUVIAL VALLEY FLOORS
A Alluvial valley floor determination.
(1) Before applying for a permit to conduct,
or before conducting surface coal mining and reclamation operations within a
valley holding a stream or in a location where the adjacent area includes any
stream, the applicant shall either affirmatively demonstrate, based on
available data, the presence of an alluvial valley floor, or submit to the
director the results of a field investigation of the proposed permit area and
adjacent area. The field investigations shall include sufficiently detailed
geologic, hydrologic, land use, soils and vegetation studies on areas required
to be investigated by the director, after consultation with the applicant, to
enable the director to make an evaluation regarding the existence of the
probable alluvial valley floor in the proposed permit area or adjacent area and
to determine which areas, if any, require more detailed study in order to allow
the director to make a final determination regarding the existence of an
alluvial valley floor. Studies performed during the investigation by the
applicant or subsequent studies as required of the applicant by the director
shall include an appropriate combination, adapted to site-specific conditions,
of:
(a) mapping of unconsolidated stream-laid
deposits holding streams including, but not limited to, geologic maps of
unconsolidated deposits, and stream-laid deposits, maps of streams, delineation
of surface watersheds and directions of shallow ground water flows through and
into the unconsolidated deposits, topography showing local and regional terrace
levels, and topography of terraces, flood plains and channels showing surface
drainage patterns;
(b) mapping of
all lands included in the area in accordance with this paragraph and subject to
agricultural activities, showing the area in which different types of
agricultural lands, such as flood irrigated lands, pasture lands and
undeveloped rangelands exist, and accompanied by measurements of vegetation in
terms of productivity and type;
(c)
mapping of all lands that are currently or were historically flood irrigated,
showing the location of each diversion structure, ditch, dam and related
reservoir, irrigated land, and topography of those lands;
(d) documentation that areas identified in
this paragraph are, or are not, subirrigated, based on ground water monitoring
data, representative water quality, soil moisture measurements, and
measurements of rooting depth, soil mottling, and water requirements of
vegetation;
(e) documentation,
based on representative sampling, that areas identified under this paragraph
are, or are not, flood irrigable by a prudent person for sustained agricultural
activities, based on stream-flow, water quality, water yield, soils
measurements, and topographic characteristics;
(f) analysis of a series of aerial
photographs, including color infrared imagery flown at a time of year to show
any late summer and fall differences between upland and valley floor vegetative
growth and of a scale adequate for reconnaissance identification of areas that
may be alluvial valley floors.
(2) Based on the investigations conducted
under Paragraph (1) of Subsection A of
19.8.10.1006 NMAC, the director
shall make a determination of the extent of any alluvial valley floors within
the study area and whether any stream in the study area may be excluded from
further consideration as lying within an alluvial valley floor. The director
shall determine that an alluvial valley floor exists if he finds that:
(a) unconsolidated stream-laid deposits
holding streams are present; and
(b) there is sufficient water to support
agricultural activities as evidenced by the existence of flood irrigation in
the area in question or its recent historical use; the capability of an area to
be flood irrigated by a prudent person for sustained agricultural activities,
based on stream-flow water yield, soils, water quality, and topography; or
sub-irrigation of the lands in question, derived from the ground water system
of the valley floor.
(3)
The requirements of this paragraph shall not apply to applicants who
affirmatively establish, to the satisfaction of the director, that the proposed
operation shall not affect any area suggested to be an alluvial valley floor
which is located outside the permit area or that the proposed operation will
not be adjacent to any area suggested to be an alluvial valley floor. For the
purposes of this paragraph, the director may rely on information submitted by
the applicant which pertains only to the permit area if it establishes the
existence of an effective buffer zone between the operation and the area in
question so as to establish that such area will not be affected,
notwithstanding its possible characterization as an alluvial valley floor.
B. Application contents
for operations affecting designated alluvial valley floors.
(1) If land within the proposed permit area
or adjacent area is identified as an alluvial valley floor and the proposed
mining operation may affect an alluvial valley floor or waters that supply
alluvial valley floors, the applicant shall submit a complete application for
the proposed mining and reclamation operations, to be used by the director
together with other relevant information, including the information required by
Subsection A of
19.8.10.1006 NMAC, as a basis for
approval or denial of the permit. The complete application shall include
detailed surveys and baseline data required by the director for a determination
of:
(a) the characteristics of the alluvial
valley floor which are necessary to preserve the essential hydrologic functions
during and after mining;
(b) the
significance of the area to be affected to agricultural activities;
(c) whether the operation will cause, or
presents an unacceptable risk of causing, material damage to the quantity or
quality of surface or ground waters that supply the alluvial valley
floor;
(d) the effectiveness of
proposed reclamation with respect to requirements of the act and 19.8 NMAC;
and
(e) specific environmental
monitoring required to measure compliance with 19.8.23 NMAC during and after
mining and reclamation operations.
(2) Information required under this paragraph
shall include, but not be limited to:
(a)
geologic data, including geologic structure, and surficial geologic maps, and
geologic cross-sections;
(b) soils
and vegetation data, including a detailed soil survey and chemical and physical
analyses of soils, a vegetation map and narrative descriptions of quantitative
and qualitative surveys, and land use data, including an evaluation of crop
yields;
(c) surveys and data
required under this paragraph for areas designated as alluvial valley floors
because of their flood irrigation characteristics shall also include, at a
minimum, surface hydrologic data, or extrapolation of such data, including
streamflow, runoff, sediment yield, and water quality analyses describing
seasonal variations field geomorphic surveys and other geomorphic
studies;
(d) surveys and data
required under this paragraph for areas designated as alluvial valley floors
because of their subirrigation characteristics, shall also include, at a
minimum, geohydrologic data, or extrapolation of such data, including
observation well establishment for purposes of water level measurements, ground
water contour maps, testing to determine aquifer characteristics that affect
waters supplying the alluvial valley floors, well and spring inventories, and
water quality analyses describing seasonal variations and physical and chemical
analysis of overburden to determine the effect of the proposed mining and
reclamation operations on water quality and quantity;
(e) plans showing how the operation will
avoid, during mining and reclamation, interruption, discontinuance or
preclusion of farming on the alluvial valley floors unless the pre-mining land
use has been undeveloped rangeland which is not significant to farming and will
not materially damage the quantity or quality of water in surface and ground
water systems that supply alluvial valley floors;
(f) maps showing farms that could be affected
by the mining and, if any farm includes an alluvial valley floor, statements of
the type and quantity of agricultural activity performed on the alluvial valley
floor and its relationship to the farm's total agricultural activity including
an economic analysis; and
(g) such
other data as the director may require.
(3) The surveys required by this paragraph
should identify those geologic, hydrologic, and biologic characteristics of the
alluvial valley floor necessary to support the essential hydrologic functions
of an alluvial valley floor. Characteristics which support the essential
hydrologic functions and which must be evaluated in a complete application
include, but are not limited to:
(a)
characteristics supporting the function of collecting water which include, but
are not limited to:
(i) the amount and rate
of runoff and a water balance analysis, with respect to rainfall,
evapotranspiration, infiltration and ground water recharge;
(ii) the relief, slope, and density of the
network of drainage channels;
(iii)
the infiltration, permeability, porosity and transmissivity of unconsolidated
deposits of the valley floor that either constitute the aquifer associated with
the stream or lie between the aquifer and the stream; and
(iv) other factors that affect the
interchange of water between surface streams and ground water systems,
including the depth to ground water, the direction of ground water flow, the
extent to which the stream and associated alluvial ground water aquifers
provide recharge to, or are recharged by bedrock aquifers;
(b) characteristics supporting the function
of storing water which include, but are not limited to:
(i) surface roughness, slope, and vegetation
of the channel, flood plain, and low terraces that retard the flow of surface
waters;
(ii) porosity,
permeability, water-holding capacity, saturated thickness and volume of
aquifers associated with streams, including alluvial aquifers, perched
aquifers, and other water bearing zones found beneath valley floors;
and
(iii) moisture held in soils or
the plant growth medium within the alluvial valley floor, and the physical and
chemical properties of the subsoil that provide for sustained vegetation growth
or cover during extended periods of low precipitation;
(c) characteristics supporting the function
of regulating the flow of water which include; but are not limited to:
(i) the geometry and physical character of
the valley, expressed in terms of the longitudinal profile and slope of the
valley and the channel, the sinuosity of the channel, the cross-section, slopes
and proportions of the channels, flood plains and low terraces, the nature and
stability of the stream banks and the vegetation established in the channels
and along the stream banks and flood plains;
(ii) the nature of surface flows as shown by
the frequency and duration of flows of representative magnitude including low
flows and floods; and
(iii) the
nature of interchange of water between streams, their associated alluvial
aquifers and any bedrock aquifers as shown by the rate and amount of water
supplied by the stream to associated alluvial and bedrock aquifers (i.e.,
recharge) and by the rates and amounts of water supplied by aquifers to the
stream (i.e., baseflow);
(d) characteristics which make water
available and which include, but are not limited to, the presence of land forms
including flood plains and terraces suitable for agricultural activities.
C. Alluvial
valley floor impact assessment and written findings.
(1) No permit or permit revision application
for surface coal mining and reclamation operations shall be approved by the
director, unless the application demonstrates and the director finds in
writing, on the basis of information set forth in the application that:
(a) the proposed operations would not
interrupt, discontinue or preclude farming on an alluvial valley floor, unless
the premining land use has been undeveloped rangeland which is not significant
to farming on the alluvial valley floor, or unless the area of an affected
alluvial valley floor is small and provides, or may provide, negligible support
for production of one or more farms; provided, however, this paragraph does not
apply to those lands which were identified in a reclamation plan approved by
the New Mexico coal surface mining commission prior to August 3, 1977, for any
surface coal and reclamation operation that, in the year preceding August 3,
1977:
(i) produced coal in commercial
quantities and was located within or adjacent to alluvial valley floors;
or
(ii) obtained specific permit
approval by the New Mexico coal surface mining commission to conduct surface
coal mining and reclamation operations within an alluvial valley
floor;
(b) the proposed
operations would not materially damage the quantity and quality of water in
surface and underground water systems that supply those alluvial valley floors
or portions of alluvial valley floors which are:
(i) included in Subparagraph (a) of Paragraph
(1) of Subsection C of
19.8.10.1006 NMAC; or
(ii) outside the permit area of an existing
or proposed surface coal mining operation;
(c) the proposed operations would be
conducted in accordance with 19.8.23 NMAC and all other applicable requirements
of the act and 19.8 NMAC; and
(d)
any change in the land use of the lands covered by the proposed permit area
from its premining use in or adjacent to alluvial valley floors will not
interfere with or preclude the reestablishment of the essential hydrologic
functions of the alluvial valley floor.
(2) The significance of the impact of the
proposed operations on farming will be based on the relative importance of the
vegetation and water of the developed grazed or hayed alluvial valley floor
area to the farm's production, or any more stringent criteria established by
the director as suitable for site-specific protection of agricultural
activities in alluvial valley floors.
(3) Criteria for determining whether a
surface coal mining operation will materially damage the quantity or quality of
waters, include, but are not limited to:
(a)
potential increases in the concentration of total dissolved solids of waters
supplied to an alluvial valley floor, as measured by using current standard
methods. Such concentrations shall not exceed threshold values at which crop
yields decrease according to documentation in current scientific publications,
unless the applicant demonstrates compliance with Subparagraph (b) of Paragraph
(3) of Subsection C of
19.8.10.1006 NMAC;
(b) potential increases in the concentration
of total dissolved solids of waters supplied to an alluvial valley floor in
excess of those incorporated by reference in Subparagraph (a) of Paragraph (3)
of Subsection C of
19.8.10.1006 NMAC shall not be
allowed unless the applicant demonstrates, through testing related to the
production of crops grown in the locality, that the proposed operations will
not cause increases that will result in crop yield decreases;
(c) for types of vegetation not listed in
scientific publications, consideration of observed correlation between total
dissolved solid concentrations in water and crop yield declines shall be taken
into account along with the accuracy of the correlations;
(d) potential increases in the average depth
to water saturated zones (during the growing season) located within the root
zone of the alluvial valley floor that would reduce the amount of subirrigation
land compared to premining conditions;
(e) potential decreases in surface flows that
would reduce the amount of irrigable land compared to premining conditions;
and
(f) potential changes in the
surface or ground water systems that reduce the area available to agriculture
as a result of flooding or increased saturation of the root zone.
(4) For the purposes of this
paragraph, a farm is one or more land units on which agricultural activities
are conducted. A farm is generally considered to be the combination of land
units with acreage and boundaries in existence prior to August 3, 1977, or, if
established after August 3, 1977, with those boundaries based on enhancement of
the farm's agricultural productivity and not related to surface coal mining
operations.
Notes
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